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金属纳米颗粒在水蒸气环境中的形状演变。

Shape Evolution of Metal Nanoparticles in Water Vapor Environment.

机构信息

Division of Interfacial Water and Key Laboratory of Interfacial Physics and Technology, Shanghai Institute of Applied Physics, Chinese Academy of Sciences , Shanghai 201800, China.

Shanghai Science Research Center, Chinese Academy of Sciences , Shanghai 201204, China.

出版信息

Nano Lett. 2016 Apr 13;16(4):2628-32. doi: 10.1021/acs.nanolett.6b00254. Epub 2016 Mar 21.

Abstract

The structures of the metal nanoparticles are crucial for their catalytic activities. How to understand and even control the shape evolution of nanoparticles under reaction condition is a big challenge in heterogeneous catalysis. It has been proved that many reactive gases hold the capability of changing the structures and properties of metal nanoparticles. One interesting question is whether water vapor, such a ubiquitous environment, could induce the shape evolution of metal nanoparticles. So far this question has not received enough attention yet. In this work, we developed a model based on the density functional theory, the Wulff construction, and the Langmuir adsorption isotherm to explore the shape of metal nanoparticle at given temperature and water vapor pressure. By this model, we show clearly that water vapor could notably increase the fraction of (110) facets and decrease that of (111) facets for 3-8 nm Cu nanoparticles, which is perfectly consistent with the experimental observations. Further investigations indicate the water vapor has different effects on the different metal species (Cu, Au, Pt, and Pd). This work not only helps to understand the water vapor effect on the structures of metal nanoparticles but also proposes a simple but effective model to predict the shape of nanoparticles in certain environment.

摘要

金属纳米粒子的结构对于其催化活性至关重要。如何理解甚至控制纳米粒子在反应条件下的形貌演变,是多相催化领域的一大挑战。已经证明,许多反应性气体具有改变金属纳米粒子结构和性能的能力。一个有趣的问题是,水蒸气这种普遍存在的环境,是否会诱导金属纳米粒子的形状演变。到目前为止,这个问题还没有得到足够的重视。在这项工作中,我们开发了一个基于密度泛函理论、Wulff 构造和 Langmuir 吸附等温线的模型,以探索给定温度和水蒸气压力下金属纳米粒子的形状。通过这个模型,我们清楚地表明,水蒸气可以显著增加 3-8nmCu 纳米粒子中(110)面的分数,降低(111)面的分数,这与实验观察结果完全一致。进一步的研究表明,水蒸气对不同的金属物种(Cu、Au、Pt 和 Pd)有不同的影响。这项工作不仅有助于理解水蒸气对金属纳米粒子结构的影响,还提出了一种简单而有效的模型,可以预测在特定环境下纳米粒子的形状。

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